Career
- 2001-present Assistant Director of Research then University Lecturer, DAMTP; Fellow, Director of Studies and Tutor, Gonville and Caius College, Cambridge
- 1995-2001 PPARC Advanced Fellow, HEP group, DAMTP; Fellow of Gonville and Caius College, Cambridge
Research
Jonathan Evans is interested in theoretical and mathematical problems in quantum field theory, supersymmetry and string theory.
Selected Publications
- J M Evans and C A S Young, Higher-spin conserved currents in supersymmetric sigma models
- on symmetric spaces, Nuclear Physics B 717 (2005) 327
- J M Evans, D Kagan, N J MacKay and C A S Young, Quantum higher-spin local charges in symmetric space sigma models Journal of High Energy Physics 0501 (2005) 020
- J M Evans, D Kagan and C A S Young, Non-local charges and the quantum integrability of sigma models on the symmetric spaces SO(2n)/SO(n)xSO(n) and Sp(2n)/Sp(n)xSp(n) Physics Letters B 597 (2004) 112
- J M Evans, Integrable sigma models and Drinfeld-Sokolov hierarchies, Nuclear Physics B 608 (2001) 591
- J M Evans and A J Mountain, Commuting charges and symmetric spaces Physics Letters B 483 (2000) 290
Publications
Super p-brane Wess-Zumino terms
– Classical and Quantum Gravity
(1999)
5,
l87
(doi: 10.1088/0264-9381/5/5/003)
Time-dependent gauge fixing and the quantization of a particle in a general electromagnetic background
– Classical and Quantum Gravity
(1999)
10,
L221
(doi: 10.1088/0264-9381/10/12/002)
Canonical quantisation of massless superparticles
– Classical and Quantum Gravity
(1999)
7,
699
(doi: 10.1088/0264-9381/7/4/021)
On the classification of real forms of non-Abelian Toda theories and W-algebras
– Nuclear Physics B
(1998)
536,
657
The no-ghost theorem for AdS3 and the stringy exclusion principle
– Nuclear Physics B
(1998)
535,
152
The octonionic membrane
– Nuclear and Particle Physics Proceedings
(1998)
68,
295
The octonionic membrane
– Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
(1997)
412,
281
Dynkin diagrams and integrable models based on Lie superalgebras
– Nuclear Physics B
(1997)
503,
715
Exact scattering in the SU(n) supersymmetric principal chiral model
– Nuclear Physics B
(1997)
493,
517
Integrability versus supersymmetry
– Physics Letters B
(1996)
389,
665
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